Quantum Dot (QD)/microsphere structures supporting Whispering Gallery Modes (WGMs) are attached to Atomic Force Microscope (AFM) cantilevers for characterization of the evanescent field around the QD/microsphere and utilization of the evanescent field for sensing at the apical surface of live cells. Following laser excitation, QD emission couples to WGMs that circumnavigate the microsphere via total internal reflection at the internal surfaces of the microsphere. The resulting evanescent field is characterized utilizing the high spatial control of an AFM in approaching a dye monolayer on a test surface. The measured evanescent field extends approximately 50 nm from the microsphere surface, matching theoretical predictions. This system was t...
The emerging field of ‘live cell nanoscopy’ has revolutionized the way biologists explore the living...
Optical microscopy uses the interactions between light and materials to provide images of the micros...
The characterization of three-dimensional inhomogeneous illumination fields is a challenge in modern...
Near-membrane and trans-membrane proteins and their interactions with the extracellular matrix (ECM)...
Summary form only given. The combination of the AFM technique and the sphere-mediated microscopy (SM...
The combination of the AFM technique and the sphere-mediated microscopy (SMM) opens a new opportunit...
We applied force spectroscopy based on atomic force microscope (AFM) to demonstrate the possibility ...
Plasmonic nanostructures can profoundly affect the optical properties of light absorbers and emitter...
Living cells use surface molecules such as receptors and sensors to acquire information about and to...
Atomic force microscopes (AFM) provide topographical and mechanical information of the sample with v...
We investigated evanescent field enhancement based on subwavelength nanogratings for improved sensit...
Plasmonic nanostructures can profoundly affect the optical properties of light absorbers and emitter...
Single molecules can nowadays be investigated by means of optical, mechanical and electrical methods...
A hot topic in current cell biology is to understand the specific nanometer-scale organization and d...
International audienceWe demonstrate the use of a near-field probe to map the angular dependence of ...
The emerging field of ‘live cell nanoscopy’ has revolutionized the way biologists explore the living...
Optical microscopy uses the interactions between light and materials to provide images of the micros...
The characterization of three-dimensional inhomogeneous illumination fields is a challenge in modern...
Near-membrane and trans-membrane proteins and their interactions with the extracellular matrix (ECM)...
Summary form only given. The combination of the AFM technique and the sphere-mediated microscopy (SM...
The combination of the AFM technique and the sphere-mediated microscopy (SMM) opens a new opportunit...
We applied force spectroscopy based on atomic force microscope (AFM) to demonstrate the possibility ...
Plasmonic nanostructures can profoundly affect the optical properties of light absorbers and emitter...
Living cells use surface molecules such as receptors and sensors to acquire information about and to...
Atomic force microscopes (AFM) provide topographical and mechanical information of the sample with v...
We investigated evanescent field enhancement based on subwavelength nanogratings for improved sensit...
Plasmonic nanostructures can profoundly affect the optical properties of light absorbers and emitter...
Single molecules can nowadays be investigated by means of optical, mechanical and electrical methods...
A hot topic in current cell biology is to understand the specific nanometer-scale organization and d...
International audienceWe demonstrate the use of a near-field probe to map the angular dependence of ...
The emerging field of ‘live cell nanoscopy’ has revolutionized the way biologists explore the living...
Optical microscopy uses the interactions between light and materials to provide images of the micros...
The characterization of three-dimensional inhomogeneous illumination fields is a challenge in modern...